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All-optical processing devices for high-speed fiber communications.

机译:用于高速光纤通信的全光处理设备。

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摘要

Ultra-fast all-optical devices are important in nowadays high-speed fiber communication. In this thesis, we propose and demonstrate a number of all-optical processing devices for clock frequency division, wavelength conversion and time-domain demultiplexing. Based on various semiconductor components including semiconductor optical amplifier, Fabry-Perot laser diode and electroabsorption modulator, high-speed all-optical devices are constructed with good performance.; A simple and robust technique of all-optical clock division is performed based on the period doubling phenomenon in directly modulated semiconductor lasers. All-optical clock-division from about 10 to 5GHz has been demonstrated. For the first time, we show that the output clock frequency can be optically controlled by a low power continuous-wave (cw) injected light signal. The transient characteristic is measured and a response shorter than 100 pico-second is obtained.; We demonstrate wavelength conversion using broad-band orthogonal pumps (BOP) four-wave mixing (FWM) in a semiconductor optical amplifier placed in a fiber-ring cavity. The widely-tunable all-optical wavelength converter operates with only one external cw pump laser. The wavelength-conversion efficiency has a variation smaller than 3 dB over a 40-nm range. Our result shows that the converter can operate essentially with any arbitrary input and output wavelengths within the range. With the scheme of polarization diversity, input polarization dependence of less than 0.5 dB is obtained. By replacing the cw pump laser with a pulsed laser source, a wavelength tunable time-division demultiplexer has been constructed and demonstrated. Signal demultiplexing from 10 Gb/s to 2.5 Gb/s is obtained with 1.5-dB power penalty.; With a further improvement of the setup, a polarization-insensitive widely tunable all-optical wavelength converter that operates without any external pump laser is demonstrated at 10 Gb/s. The scheme is based on a double-ring fiber laser incorporating a semiconductor optical amplifier. Using BOP FWM, a uniform (3-dB variation) conversion efficiency over a 40-nm conversion range is obtained.; All-optical wavelength conversion and broadcasting up to 6 x 10 Gb/s have been demonstrated with an electroabsorption modulator based on cross-absorption modulation. Also, we demonstrate that the converter can stabilize the state-of polarization of the converted outputs with a degree of polarization larger than 98%. The results show the capability of reducing the amplitude jitter caused by varying states of the input polarizations.
机译:超高速全光设备在当今的高速光纤通信中很重要。在本文中,我们提出并演示了许多用于时钟分频,波长转换和时域多路分解的全光处理设备。基于包括半导体光放大器,法布里-珀罗激光二极管和电吸收调制器在内的各种半导体组件,构建了性能良好的高速全光器件。基于直接调制的半导体激光器中的周期倍增现象,执行了一种简单而强大的全光时钟划分技术。已经证明了约10至5GHz的全光时钟分频。第一次,我们表明输出时钟频率可以通过低功率连续波(cw)注入的光信号进行光学控制。测量瞬态特性并获得小于100皮秒的响应。我们演示了在光纤环腔中放置的半导体光放大器中使用宽带正交泵浦(BOP)四波混合(FWM)进行波长转换。这种可广泛调节的全光波长转换器仅需一个外部连续泵浦激光器即可工作。在40 nm范围内,波长转换效率的变化小于3 dB。我们的结果表明,该转换器基本上可以在该范围内的任意输入和输出波长下工作。使用偏振分集方案,可获得小于0.5 dB的输入偏振依赖性。通过用脉冲激光源代替连续波泵浦激光器,已构建并演示了波长可调时分多路分解器。从10 Gb / s到2.5 Gb / s的信号多路分解获得1.5 dB的功率损失。随着设置的进一步改进,展示了一种偏振不敏感,可广泛调谐的全光波长转换器,该转换器无需任何外部泵浦激光器即可工作,速度为10 Gb / s。该方案基于结合了半导体光放大器的双环光纤激光器。使用BOP FWM,可以在40 nm的转换范围内获得均匀的(<3-dB变化)转换效率。使用基于交叉吸收调制的电吸收调制器已经证明了全光波长转换和高达6 x 10 Gb / s的广播。此外,我们证明该转换器可以以大于98%的偏振度来稳定转换后输出的偏振状态。结果表明,可以减少由于输入偏振态变化而引起的幅度抖动。

著录项

  • 作者

    Chow, Kin Kee.;

  • 作者单位

    Chinese University of Hong Kong (People's Republic of China).;

  • 授予单位 Chinese University of Hong Kong (People's Republic of China).;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 130 p.
  • 总页数 130
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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